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柠檬-薄荷精油纳米乳剂混合物的研制:对芽孢杆菌属的抑制作用、A549肺癌细胞活力、细胞周期进程及遗传毒性的影响

Development of a Lemon-peppermint Essential Oil Nanoemulsion Blend: Effects on Bacillus spp. Inhibition, A549 Lung Cancer Cell Viability, Cell Cycle Progression, and Genotoxicity.

作者信息

Fahmy Heba Mohamed, Hamad Amany Mohamed

机构信息

Biophysics Department, Faculty of Science, Cairo University, Giza, Egypt.

出版信息

Cell Biochem Biophys. 2025 Jul 2. doi: 10.1007/s12013-025-01811-5.

Abstract

The increasing resistance to treatments and limited effectiveness of singular medications against cancer and foodborne bacteria highlight the need for therapeutic synergy using multiple natural components. This study aimed to develop a blend nanoemulsion (NE) combining two plant essential oils, lemon (LEO) and peppermint (PEO), for anticancer and antibacterial testing. The chemical composition of PEO and LEO was analyzed by GC-MS, identifying D-limonene (77.89%) and menthol (56.63%) as their primary constituents. The NEs were prepared with droplet sizes of 57.2 (LEO), 104.2 (PEO), and 44.3 nm (blend), confirmed by FTIR. Cellular viability, DNA damage, and cell cycle progression in A549 lung cancer cells were assessed, showing a 50% reduction in viability after treatment with LEO (1.7 mg/mL), PEO (4.9 mg/mL), and the blend (2.5 mg/mL). Blend NE induced apoptosis and halted the S-phase of the cell cycle. Antibacterial activity was evaluated against Bacillus cereus, Bacillus subtilis, and Pseudomonas aeruginosa. Regarding MIC, blend NE (20 mg/mL) was more effective than LEO-NE (40 mg/mL) and PEO-NE (80 mg/mL) against B. subtilis. TEM analysis confirmed bacterial lysis, supporting the blend NE's superior antimicrobial effects. This synergy holds promise for enhanced cancer treatment and antibacterial applications.

摘要

癌症治疗耐药性不断增加以及单一药物对癌症和食源性病原体的有效性有限,凸显了使用多种天然成分实现治疗协同作用的必要性。本研究旨在开发一种混合纳米乳剂(NE),将柠檬(LEO)和薄荷(PEO)两种植物精油混合,用于抗癌和抗菌测试。通过气相色谱 - 质谱联用仪(GC-MS)分析了PEO和LEO的化学成分,确定D-柠檬烯(77.89%)和薄荷醇(56.63%)为其主要成分。通过傅里叶变换红外光谱仪(FTIR)确认制备的纳米乳剂液滴尺寸分别为57.2(LEO)、104.2(PEO)和44.3 nm(混合)。评估了A549肺癌细胞的细胞活力、DNA损伤和细胞周期进程,结果显示用LEO(1.7 mg/mL)、PEO(4.9 mg/mL)和混合纳米乳剂(2.5 mg/mL)处理后细胞活力降低了50%。混合纳米乳剂诱导细胞凋亡并使细胞周期停滞在S期。对蜡样芽孢杆菌、枯草芽孢杆菌和铜绿假单胞菌进行了抗菌活性评估。关于最低抑菌浓度(MIC),混合纳米乳剂(20 mg/mL)对枯草芽孢杆菌的抗菌效果比LEO纳米乳剂(40 mg/mL)和PEO纳米乳剂(80 mg/mL)更有效。透射电子显微镜(TEM)分析证实了细菌裂解,支持了混合纳米乳剂具有卓越的抗菌效果。这种协同作用有望增强癌症治疗和抗菌应用效果。

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